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5,6-dibromoindan-1-one is an organic compound characterized by its molecular formula C9H6Br2O, which indicates the presence of nine carbon atoms, six hydrogen atoms, two bromine atoms, and one oxygen atom. This chemical is a derivative of indan-1-one, featuring two bromine atoms attached at the 5th and 6th carbon positions of the indan ring. It is a white crystalline solid that is relatively stable and can be used in various chemical reactions and applications, such as in the synthesis of pharmaceuticals and other organic compounds. Due to its halogenated nature, 5,6-dibromoindan-1-one may exhibit different chemical properties compared to its non-halogenated counterparts, making it a valuable intermediate in organic synthesis.

1289167-38-9

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1289167-38-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1289167-38-9 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,2,8,9,1,6 and 7 respectively; the second part has 2 digits, 3 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 1289167-38:
(9*1)+(8*2)+(7*8)+(6*9)+(5*1)+(4*6)+(3*7)+(2*3)+(1*8)=199
199 % 10 = 9
So 1289167-38-9 is a valid CAS Registry Number.

1289167-38-9Upstream product

1289167-38-9Downstream Products

1289167-38-9Relevant academic research and scientific papers

Bifunctional Indenyl-Derived Receptors for Fluoride Chelation and Detection

Tirfoin, Rmi,Abdalla, Joseph A. B.,Aldridge, Simon

, p. 11813 - 11824 (2015/08/11)

Anion receptors based on a [CpFe(indenyl)] scaffold offer the possibility for the incorporation of adjacent Lewis acidic functions onto a six-membered carbocyclic framework, while at the same time retaining the colorimetric/electrochemical reporter mechanisms available to synthetically simpler ferrocene systems. Thus, [CpFe(indenyl)] systems featuring mutually ortho BMes2 and PPh2Me+ substituents (with either 4,5 or 5,6 regiochemistry) are accessible which are capable of cooperative fluoride ion fixation. Simultaneous binding at the borane and phosphonium centres can be established by spectroscopic, structural and computational approaches, and is responsible for the favourable thermodynamics associated with F- uptake. Thus, in contrast to simple BMes2 systems, the binding of fluoride is found to be more favourable than the uptake of cyanide (which interacts only with the borane Lewis acid). Moreover, in the case of a 4-(MePh2P)-5-(Mes2B)-7-Me-indenyl derivative, fluoride chelation is signalled not only by a large cathodic shift in the FeII/FeIII potential (>500 mV in THF), but also by a distinct colour change from green (for the free receptor) to maroon for the adduct.

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